Research Journal of Pharmacy and Technology
SCOPUS
  • Year: 2025
  • Volume: 18
  • Issue: 6

Analysis of netrin 1 gene using bioinformatics in patients with diabetic foot

  • Author:
  • D Chaitra1,*, Adiga Usha2,**, Adiga Sachidananda3,***, Divya N Pai4
  • Total Page Count: 5
  • Page Number: 2528 to 2532

1Assistant Professor, Department of Anatomy, K S Hegde Medical Academy, Mangalore, Karnataka, India

2Professor, Department of Biochemistry, Apollo Institute of Medical Sciences and Research, Chittoor, India

3Professor, Department of Pharmacology, Apollo Institute of Medical Sciences and Research, Chittoor, India

4Assistant Professor, Department of Anatomy, K S Hegde Medical Academy, Mangalore, Karnataka, India

*Corresponding Author E-mail: chaitrad@nitte.edu.in

**ushachidu@yahoo.com

***adigaiscool@yahoo.com

Online published on 7 Ocotber, 2025.

Abstract

Diabetic foot, a serious complication of diabetes mellitus, involves delayed wound healing and an increased risk of infection and amputation. Netrin-1, a laminin-related secreted protein, plays a key role in angiogenesis, inflammation, and tissue repair, making it a relevant gene in diabetic foot pathology. This study aimed to identify and analyse single nucleotide polymorphisms (SNPs) in the Netrin-1 (NTN1) gene using bioinformatics tools to distinguish between damaging and neutral variants. Predictive algorithms such as SIFT, PROVEAN, and I- Tasser were used to assess their potential impact. Notably, SNP analysis at position 223 revealed several potentially harmful substitutions. Structural modelling indicated that these mutations could alter the protein’s size and charge, potentially disrupting its normal function.

Keywords

Diabetic foot, Angiogenesis, Netrin 1, Single nucleotide polymorphism